In this study, combined multi pass equal channel angular pressing (ECAP), and subsequent warm extrusion at different temperatures are performed on commercial purity titanium. Mechanical and microstructural evolutions are then investigated. Since it was observed that the four passes ECAP processed sample showed the best strength and reasonable elongation, this sample was selected for studying the extrusion temperature effects on the structure and mechanical properties of Grade 2 titanium. Therefore, the 4th passes ECAP processed sample was extruded at different temperatures of 300 °C, 350 °C, 400 °C, 450 °C and 500 °C. The result revealed that the best mechanical properties were achieved from the specimen processed by four passes ECAP follow...
This paper presents an investigation on the evolution of microstructure and deformation characterist...
This paper presents an investigation on the evolution of microstructure and deformation characterist...
The objective of the present study is to investigate the deformation behaviour of Ultrafine-grain (U...
In this study, combined multi pass equal channel angular pressing (ECAP), and subsequent warm extrus...
In this study, combined multi pass equal channel angular pressing (ECAP), and subsequent warm extrus...
Two different processing routes were used to investigate the microstructure and strength of commerci...
Experiments were conducted on commercial purity titanium to evaluate the microstructure and mechanic...
Microstructures together with mechanical properties of commercially pure titanium (CP-Ti) developed ...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
Severe plastic deformation (SPD) is an effective method for producing ultrafine grained (UFG) struct...
This paper presents an investigation on the evolution of microstructure and deformation characterist...
This paper presents an investigation on the evolution of microstructure and deformation characterist...
The objective of the present study is to investigate the deformation behaviour of Ultrafine-grain (U...
In this study, combined multi pass equal channel angular pressing (ECAP), and subsequent warm extrus...
In this study, combined multi pass equal channel angular pressing (ECAP), and subsequent warm extrus...
Two different processing routes were used to investigate the microstructure and strength of commerci...
Experiments were conducted on commercial purity titanium to evaluate the microstructure and mechanic...
Microstructures together with mechanical properties of commercially pure titanium (CP-Ti) developed ...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Incremental equal channel angular pressing (I-ECAP) is one of the continuous severe plastic deformat...
Commercially pure titanium strengthened by severe plastic deformation constitutes an alternative to ...
Severe plastic deformation (SPD) is an effective method for producing ultrafine grained (UFG) struct...
This paper presents an investigation on the evolution of microstructure and deformation characterist...
This paper presents an investigation on the evolution of microstructure and deformation characterist...
The objective of the present study is to investigate the deformation behaviour of Ultrafine-grain (U...